TY - GEN
T1 - Stability, stabilization and experiments for networked control systems with random time delay
AU - Chen, Chih Chung
AU - Hirche, Sandra
AU - Buss, Martin
PY - 2008
Y1 - 2008
N2 - It is well known that the stability and performance of a networked control system (NCS) are strongly affected by the transmission delay, which is usually random in communication networks such as Ethernet. In order to cope with the random transmission delay and increase the control performance, a novel switching control approach for NCS is proposed. The random transmission delay is modelled by a Markov process. A controller, which is able to monitor the transmission delay and synchronously switches with the delay, is considered. The resulting closed-loop system is a Markovian jump linear system (MJLS) with random delay. In this paper a delay-dependent stability condition for stochastic exponential mean square stability is derived by using a Lyapunov-Krasovskii functional. The controller design algorithm for a switching controller is proposed. Experiments with the 3 degree-of-freedom (DoF) robotic manipulator ViSHaRD31 show the validity of the proposed approach. An alternative nonswitching approach with buffering strategy at the controller side is considered. The experimental comparison with the non-switching counterpart indicates performance benefits for the proposed switching control approach.
AB - It is well known that the stability and performance of a networked control system (NCS) are strongly affected by the transmission delay, which is usually random in communication networks such as Ethernet. In order to cope with the random transmission delay and increase the control performance, a novel switching control approach for NCS is proposed. The random transmission delay is modelled by a Markov process. A controller, which is able to monitor the transmission delay and synchronously switches with the delay, is considered. The resulting closed-loop system is a Markovian jump linear system (MJLS) with random delay. In this paper a delay-dependent stability condition for stochastic exponential mean square stability is derived by using a Lyapunov-Krasovskii functional. The controller design algorithm for a switching controller is proposed. Experiments with the 3 degree-of-freedom (DoF) robotic manipulator ViSHaRD31 show the validity of the proposed approach. An alternative nonswitching approach with buffering strategy at the controller side is considered. The experimental comparison with the non-switching counterpart indicates performance benefits for the proposed switching control approach.
UR - https://www.scopus.com/pages/publications/52449115452
U2 - 10.1109/ACC.2008.4586712
DO - 10.1109/ACC.2008.4586712
M3 - Conference contribution
AN - SCOPUS:52449115452
SN - 9781424420797
T3 - Proceedings of the American Control Conference
SP - 1552
EP - 1557
BT - 2008 American Control Conference, ACC
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 2008 American Control Conference, ACC 2008
Y2 - 11 June 2008 through 13 June 2008
ER -